EP3199370B1 - Procédé de fabrication et installation destinée à utiliser le procédé de fabrication - Google Patents

Procédé de fabrication et installation destinée à utiliser le procédé de fabrication Download PDF

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Publication number
EP3199370B1
EP3199370B1 EP17000030.1A EP17000030A EP3199370B1 EP 3199370 B1 EP3199370 B1 EP 3199370B1 EP 17000030 A EP17000030 A EP 17000030A EP 3199370 B1 EP3199370 B1 EP 3199370B1
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EP
European Patent Office
Prior art keywords
product
identification
substrate
product code
code
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP17000030.1A
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German (de)
English (en)
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EP3199370A1 (fr
Inventor
Kai Büntemeyer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kolbus GmbH and Co KG
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Kolbus GmbH and Co KG
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Application filed by Kolbus GmbH and Co KG filed Critical Kolbus GmbH and Co KG
Priority to PL17000030T priority Critical patent/PL3199370T3/pl
Publication of EP3199370A1 publication Critical patent/EP3199370A1/fr
Application granted granted Critical
Publication of EP3199370B1 publication Critical patent/EP3199370B1/fr
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/12Programme control other than numerical control, i.e. in sequence controllers or logic controllers using record carriers
    • G05B19/124Programme control other than numerical control, i.e. in sequence controllers or logic controllers using record carriers using tapes, cards or discs with optically sensed marks or codes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42CBOOKBINDING
    • B42C19/00Multi-step processes for making books
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/21Pc I-O input output
    • G05B2219/21053Each unit, module has unique identification code, set during manufacturing, fMAC address

Definitions

  • the present invention relates to a method for producing movable products according to the preamble of claim 1 and a system according to the preamble of claim 17.
  • the substrates from which they are produced are provided with slip sheets which contain the information required for the production.
  • slip sheets which contain the information required for the production.
  • runnels contain a precast drawing, a work plan and order-related data such as the production date and the requested quantity of the same products.
  • Such a slip accompanies the product or products during its production and is used at the different processing stations as the basis for the processing.
  • the invention achieves the object by a method having the features of patent claim 1 and by a system having the features of claim 17.
  • Advantageous developments of the invention are characterized by the features specified in the subclaims.
  • the method provides for the determination of the values of the parameters which are relevant for the production of the product and describing the product and to combine them into a product parameter set.
  • the product parameter set is converted by suitable means into a product code with which at least one substrate required for the production of the product is identified.
  • the generation of the product code follows such a clear rule that identical product parameter sets are compulsorily mapped in the same product code and from the product code by inverted application of this regulation, the product parameter set on which the product code is based can be determined. In this way, information about the properties to be produced from the substrate to be produced from this substrate can be obtained from the product code for the production process.
  • the indicator is read and determined from the information obtained therefrom setpoint specifications for manipulated variables of the device for processing the substrate.
  • the information read from the license plate is transmitted to a controller of the device processing the substrate and from this as setpoint specifications for controllable delivery devices and controllable drives of the device for changing the manipulated variables and for processing the substrate used.
  • the processing of the substrate is followed by information obtained from the identifier which corresponds to the parameter values obtained at the beginning and describing the product to be produced.
  • the substrate to be processed for the production of the product itself is the carrier of the product description
  • the assignment of substrate and product description can only be lost by destroying the label and the uniqueness of the translation specification of the product parameter set and thus of the product properties into the product code and thus the indicator results. that the original product description can be restored at any time and at any location from any number plate as soon as the translation requirement is known and without any further information being required.
  • the recovery of the production-relevant product description is independent of the specification of the production plant or of the producing company, whereby the transfer of a production order or partial order is significantly simplified.
  • the product parameters may only assume discrete values, resulting in a finite number of possible product parameter sets and thus a finite number of possible product codes.
  • the size of the product code can be limited to a desired level and on the other hand the number of possible product codes.
  • the exclusion of nonsensical values from the area of admissibility leads to a further limitation here.
  • the product code consists of placing a set of alphanumeric characters, as these can be electronically processed in a simple manner.
  • the reading of the mark is preferably carried out by a reading device of the production plant, which replaces the visual reading and manual transmission of information by personnel and allows automation.
  • the automation advantageously extends from the reading of the license plate by a reading device of the production facility over the Generating setpoint specifications from the information of the indicator for adjusting manipulated variables of the controllable drives and the controllable delivery devices of the processing device processing the substrate to a product to the product to be produced up to the manipulation of the substrate by the processing device. Also, automated control is possible by comparing the generated features with the parameter values retrieved from the tag.
  • the license plate is formed by an optical marking on the substrate.
  • an optical marking offers the possibility of being able to rely on visual detection in cases of faults or for control purposes.
  • the license plate is formed by a radio tag.
  • the RFID tag may also be attached to the substrate in an unobstructed or restricted location and, in addition to the cited marking, may perform further functions relevant to the production and / or use of the product, such as, for example, temperature or humidity monitoring.
  • the rule for the transfer of a product parameter set in a product code in a predetermined assignment of the code to the parameter set is stored in a database, which can be used by the bijective assignment in a simple manner for the recovery of the product parameter set from the product code.
  • this database contains the entirety of the assignments of all permissible product parameter sets, so that their subsequent extension is unnecessary.
  • the rule is formed by a computer-implemented algorithm which generates the mappings.
  • the memory requirement required for this algorithm is independent of the step size and the number of permissible parameter values and thus offers itself especially for small to infinitesimal increments and very large amounts of permissible values.
  • control of the processing device is connected by a device for remote data transmission with an entity that holds the rule for the transfer of the product parameter set in a product code, which allows the access of multiple processing devices also different manufacturing facilities on the same source of the transfer rule.
  • the total memory requirement for the rule can be reduced.
  • changes in the regulation can be made centrally in this way and it is ensured that all connected processing devices use the same rule with the same state of change.
  • the data flow is effected by the transmission of electrical signals via data cables.
  • the data flow can be achieved in a particularly simple manner and secured by known measures against interference with data transmission.
  • the data flow takes place through the transmission of electromagnetic signals which are in the visible spectrum and transmitted via optical devices such as optical fibers. If they are in the invisible spectrum, wireless connections can also be used. In this way, even large spatial distances between the production facility and the provision for the transfer of the product parameter set into a product code prevailing device realized and thus the number of the Regulation for a variety of production equipment retaining facilities are kept low.
  • the remote data transmission device comprises a directed connection to a data center which prescribes the rule for the transfer of the product parameter set into a product code.
  • the remote data transmission takes place undirected to an Internet server which prescribes the rule for the transfer of the product parameter set into a product code.
  • an Internet server which prescribes the rule for the transfer of the product parameter set into a product code.
  • the product code is extended to order-related information such as the number of units to be manufactured, production date and / or recipient to a job code, which is used as a characteristic of the substrate.
  • order-related information such as the number of units to be manufactured, production date and / or recipient to a job code, which is used as a characteristic of the substrate.
  • the substrate can carry all production and order relevant information, whereby the degree of automation of the product manufacturing can be further increased.
  • FIG. 1 shows an example of a first production equipment 70 of the print finishing, respectively book cover manufacturing comprising a book cover machine 1.
  • the production plant has a controller 60, which transmits to the book cover 1 setpoint specifications 111.1 to 111.k for adjusting the manipulated variables 110.1 to 110.m.
  • a reading device 50 of the production system 70 detects the on the as in FIG. 4 barcode 5 applied, which shows a job code 103.
  • the reading device 50 comprising a camera transmits the read job code 103 to the controller 60 to which it is connected.
  • the production facility 70 further has a remote data transmission device 81, which enables the bidirectional data exchange between the controller 60 and a data center 83 arranged outside the production facilities 70 on a direct connection 85. Via the remote data transmission device 81, the production system 70 sends the order code 103 detected by the reading device 50 to the data center 83, from which it receives the product parameter set 101 on which this order code 103 is based.
  • the data center 83 comprises a database 61, which contains data sets of permissible product parameter sets 101 and product codes 102 and order codes 103 associated therewith.
  • the data center 83 has an order translation device 80 which, using the database 61, determines from the received order code 103 the underlying product parameter set 101 and makes it available to the production system 70 via the remote data transmission devices 81.
  • the order translation device 80 of the data center 83 is able to generate order data from the order code 103 and also the production plant 70 to submit.
  • the data center 83 has a product translation device 9, which, comparable to the job translation device 80, determines the associated product parameter set 101 from an article code 102 provided.
  • the control 60 of the production system 70 includes a book cover automaton 1 assigned Production Translation Device 71.
  • second production line 70 ' comprises two book cover machines 1' and 1 ", which correspond respectively to the book cover machine 1 of the first-mentioned system 70.
  • Each of these book cover machines 1 'and 1" of the second system 70' is a reading device 50 'or 50 "assigned, which a barcode 5 of the respectively supplied reference utility 4, 4 'is detected and transmitted to the controller 60' of the second system 70 '.
  • the second system 70' also comprises a remote data transmission device 81 'for transmitting the data from the reading devices 50', 50 "detected codes 102 to the same data center 83 for the recovery of the product parameter set 101.
  • the read bar codes 5 include a product code 102 instead of an order code 103 as in the former production equipment 70.
  • the order code 103 comprises the information contained in the product code 102 about the book covers 8 to be produced and, in addition, information about order data such as, for example, quantity, date and customer.
  • the product code 102 detected by its reading devices 50', 50 is transmitted to the data center 83 and the underlying product parameter set 101 is received therefrom.
  • the second production facility 70 has a further data connection 86, via which data storage 84 made available via the Internet can be accessed.
  • the data memory 84 provides the necessary information with the aid of which the associated product parameter sets 101 can be determined from product codes 102 or order codes 103.
  • the computing center 90 containing the transmission rule can be provided by the data center 83 and / or the data memory 84.
  • This algorithm 90 is used by the job translation devices 80 and the article translation devices 9, respectively, to interconvert product parameter sets 101 on the one hand and product codes 102 or job codes 103 into each other.
  • the controller 60 'of the production system 70' comprises the functionalities of the translation devices 9, 80.
  • a product translator 9 generates a product code directly from the product parameter set 101 by applying the algorithm 90 available to it.
  • the product translation device 9 uses a database 60 shown in dashed lines, in which the bijective associations between product parameter sets 101 and product codes 102 are stored. Notwithstanding this, in the alternative, in FIG. 6 1, an order translation device 80 from the product parameter set 101 and an order data set 104 obtained from previously determined parameter values of the associated production order have an order code 103.
  • the obtained code 102, 103 is converted into a marking of the reference benefit 4, 4 'by being applied by a printing device 82 as a bar code 5 on the reference benefit 4, 4'.
  • This barcode 5 is in each case by a the book cover machines 1, 1 ', 1 "associated reading device 50, 50' detected and the read information for further processing to a data processing device 71 for generating setpoint specifications 111.1 to 111.k for the feeders 63.1 to 63.5 and controllable drives 62.1 to 62.3 transmitted.
  • this data processing device 71 can accordingly FIG.
  • the setpoint specifications 111.1 to 111.k are used by the feed devices 63.1 to 63.5 and the controllable drives 62.1 to 62.3 of the ceiling machine 1, 1 ', 1 "for adapting the manipulated variables 110.1 to 110.m or directly for the operation of the processing devices 11, 13, 23, 24, 26, 27, 40, 43, 51, 52 used.
  • FIGS. 2 to 4 a book cover machine 1, 1 ', 1 "of the production lines 70 and 70' are produced in the book covers 8 by joining cover boards 2 and back inserts 3 on reference benefits 4.
  • a respective reference utility 4 is singulated from a utility magazine 11 and a clamping belt conveyor 17 a Nutzzufu Entry 10 abiszylinder supplied, which takes over the reference use 4 with grippers, past an applicator roll of a Glue 13 and at the joining point to the two synchronously supplied cover boards 2 and a back insert 3 rolls.
  • Pressure rollers 15 press at the joining point, the boards 2, 3 on the dustsnutzen 4, while a reciprocating suction bar takes over the mounted book cover 7 formed by the use of cylinders and pressure rollers 15 Anrollinraum, to supply them to a wrapping and pressing station, consisting of a head / Wenneinschlagstation 40 and a side wrapping station 43 for driving the protruding reference benefit edges and a press roller pair 45 for firmly rubbing the cardboard parts 2, 3 on the reference benefit 4.
  • a delivery 46 are the finished Book covers 8 stacked and issued for manual acceptance.
  • the cover boards 2 are located in a cardboard magazine 23.
  • the bottom cover boards are pushed out by a board slide 21 a cardboard feeder 20 and guided to an intermediate position, from which they are fed from another cardboard slider 21 aligned with outer board guides 29 the joining point.
  • the board slides 21 are coupled together at a fixed distance and are moved with a constant delivery stroke 22 equal to this distance clockwise back and forth.
  • the back inserts 3 are advanced by the cardboard slides 21 in a guide channel 30 which is adjustable by means of the bar code 5 as described above.
  • the back inserts 3 are inserted behind the cardboard magazine 23 into the guide channel 30 extended through the cardboard magazine 23.
  • a back insert web 6 made of flexible reel warp is inserted by a thread feeder 24 transversely to the cardboard feed direction into the guide channel 30 and separated by means of a cutting device 26 in back insert width 100.3 of the back insert web 6 and thereby transferred entirely into the guide channel 30.
  • the separated back insert 3 is transported to a position within the cardboard magazine 23, from where it is then transported together with the cover panels 2 with the third and fourth delivery 22 of the board slide 21 to the Anrollinraum on.
  • the separated from the back insert track 6 back insert 3 ' may be slightly longer than the required back insert length.
  • the determined according to the book cover height 100.2 back insert length is by unilateral separation of a Waste piece created by means of a arranged on the guide channel 30 cutting device 27.
  • Adjustments 110.4 are provided with regard to the opened width 100.1 of the book cover 8, by positioning the outer board guides 29 or the side inserting devices 44 by means of feed devices 63.2 and 63.4.
  • the adjustment 110.4 takes into account the back insert width 100.3, wherein the width of the guide channel 30 is changed by a feed device 63.1, while a respectively required back insert width 100.3 of the back insert 3 is supplied by a changed feed of a controllable drive 62.2 connected to the pull-off roller pair.
  • the changing open width 100.1 of the book cover 8 is compensated with respect to the fixed utility width 100.4 of the reference benefit 4 by a changed impact width in the side impact station 43.
  • the leading edge of the cover boards 2, 2' and back inserts 3 is defined as a fixed reference edge, as can be seen from the fixed frame edge stops of the cardboard magazines 23.
  • the processing of differently high cover boards 2, 2 'and back inserts 3 therefore requires a format adjustment 110.1 of the stroke position of the constant delivery stroke 22, which is realized by electronic adjustment of a servomotor 62.1 provided as a drive for the card sliders 21.
  • the book cover height 100.2 is also set in the head / foot impact station 40, by means of a delivery device 63.3 the position 110.3 a complicateinschlag Hughes 42 is changed relative to a frame fixedly arranged Kopfeinschlag sensible 41.
  • left and right Eckenab magnetic resonance (Functional)-producing devices 52 are arranged with which 4 corner sections are separated in a repulsion width 100.5 at the leading and trailing edge in the passage of the reference benefits.
  • the rotary tools of the corner repelling devices 52 are driven by a servo motor 62.2, which allows an electronic adjustment of the repelling width 100.5 corresponding to the respective height 100.2 and opened width 100.1 of the book covers 8.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • General Factory Administration (AREA)

Claims (21)

  1. Procédé, destiné à la fabrication de produits mobiles (8), chacun en au moins un substrat (2, 2', 3, 3', 4, 4') comprenant au moins les étapes consistant à
    • déterminer des valeurs de paramètres (100.1 à 100.5) du produit (8) qui doit être fabriqué,
    • créer un jeu de paramètres de produits (101) à partir des valeurs de paramètres (100.1 à 100.5) déterminées,
    • transformer le jeu de paramètres de produits (101) en un code produit (102) à l'aide d'un système de conversion de produits (9),
    • transformer le code produit (102) en un identifiant (5), au moins un substrat (2, 2', 3, 3', 4, 4') requis pour la fabrication du produit (8) étant porteur dudit identifiant (5),
    • lire l'identifiant (5),
    • transformer l'identifiant (5) lu en valeurs de consignes prescrites (111.1 à 111.k) pour des grandeurs de réglage (110.1 à 110.m) d'un dispositif (1, 1', 1") pour la fabrication du produit mobile (8) à partir de l'au moins un substrat (2, 2', 3, 3', 4, 4'),
    • modifier des grandeurs de réglage (110.1 à 110.m) du dispositif (1, 1', 1") à l'aide des valeurs de consignes prescrites (111.1 à 111.k) déterminées par des systèmes d'amenage (63.1 à 63.5) et/ou des entraînements susceptibles d'être commandés (62.1 à 62.3) du dispositif (1, 1', 1") et
    • usiner le substrat (2, 2', 3, 3', 4, 4') identifié par le dispositif (1, 1', 1") à l'aide de l'identifiant (5) lu,
    caractérisé en ce qu'au moins la transformation du jeu de paramètres de produits (101) dans un code produit (102) par le système de conversion de produits (9) suit une prescription univoque, de telle manière que des jeux de paramètres de produits (101) identiques mènent obligatoirement vers le même code produit (102) et qu'à partir de chaque code produit (102), le jeu de paramètres (101) associé puisse être déterminé par application inversée de la même prescription.
  2. Procédé selon la revendication 1, caractérisé en ce que la plage de valeurs autorisées pour chaque paramètre (100.1 à 100.5) formant le jeu de paramètres de produits (101) comprend chaque fois exclusivement un nombre final de valeurs discrètes et en ce que la combinaison quelconque de valeurs autorisées mène à un nombre final de jeux de paramètres de produits (101) possibles.
  3. Procédé selon la revendication 1 ou 2, caractérisé en ce que le code produit (102) est un code alphanumérique.
  4. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que l'identifiant (5) est détecté par un lecteur (50, 50', 50"), le lecteur (50, 50', 50") étant en connexion fonctionnelle directe ou indirecte avec au moins un système de commande (60, 60') du dispositif (1, 1', 1").
  5. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que l'identifiant (5) qui reproduit le code produit est formé par un marquage optiquement détectable sur l'au moins un substrat (2, 2', 3, 3', 4, 4').
  6. Procédé selon l'une quelconque des revendications 1 à 4, caractérisé en ce que l'identifiant (5) qui reproduit le code produit est formé par une étiquette à radiofréquence, qui munit l'au moins un substrat (2, 2', 3, 3', 4, 4').
  7. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que les étapes de procédé consistant à lire l'identifiant (5), à transformer l'identifiant (5) en valeurs de consignes prescrites (111.1 à 111.k) pour des grandeurs de réglage (110.1 à 1110.m) d'un dispositif (1, 1', 1") pour la fabrication du produit mobile (8) et à modifier des grandeurs de réglage (110.1 à 110.m) par des systèmes d'amenage (63.1 à 63. 5) et des entraînements individuels (62.1, 62.2, 62.3) du dispositif (1, 1', 1") à l'aide des valeurs de consignes prescrites (111.1 à 111.k) déterminées s'effectuent de manière automatisée.
  8. Procédé selon l'une quelconque des revendications précédentes, caractérisé par une affectation bijective prédéterminée chaque fois d'un code produit (102) à un jeu de paramètres de produits (101).
  9. Procédé selon la revendication 8, caractérisé en ce que les affectations bijectives prédéfinies de jeux de paramètres de produits (101) autorisés d'une part et de code produit (102) d'autre part sont sauvegardées dans une base de données (61, 61').
  10. Procédé selon l'une quelconque des revendications 1 à 7, caractérisé en ce que la transformation des jeux de paramètres de produits (101) dans le code produit (102) s'effectue à l'aide d'un algorithme (90) inversible mis en oeuvre par ordinateur.
  11. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce qu'on fabrique chaque fois un produit (8) à partir de plusieurs substrats (2, 2', 3, 3', 4, 4'), à partir de l'identifiant (5) lu de l'un des substrats (2, 2', 3, 3', 4, 4'), des informations étant acquises pour l'usinage d'autres substrats (2, 2', 3, 3', 4, 4') que ceux qui portent l'identifiant (5) du même produit (8).
  12. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que le système de commande (60, 60') du dispositif accède à la base de données (61, 61') ou à l'algorithme (90) au moyen d'un dispositif de transfert de données (81, 81').
  13. Procédé selon la revendication 12, caractérisé par une connexion directe du dispositif de transfert de données (81, 81') avec un centre informatique (83) mémorisant la base de données (61, 61') et/ou l'algorithme (90).
  14. Procédé selon la revendication 12, caractérisé par l'accès du dispositif de transfert de données (81, 81') à un serveur Internet (84) avec ou sans autorisation d'accès privilégiée, le serveur Internet (84) mettant à disposition la base de données (61, 61') et/ou l'algorithme (90).
  15. Procédé selon l'une quelconque des revendications précédentes, caractérisé en ce que l'identifiant (5) d'au moins l'un des substrats (2, 2', 3, 3', 4, 4') contient aussi bien des informations sur l'identification du code produit (102) qu'également des informations sur l'ordre de fabrication associé.
  16. Procédé destiné à la fabrication de produits d'impression (8) selon l'une quelconque des revendications précédentes.
  17. Installation, destinée à la fabrication de produits mobiles (8) chacun en au moins un substrat (2, 2', 3, 3', 4, 4'), comportant au moins
    • une machine (1, 1', 1") équipée d'un dispositif d'usinage (11, 13, 23, 24, 26, 27, 40, 43, 51, 52) destiné à usiner au moins l'un des substrats (2, 2', 3, 3', 4, 4'), comprenant
    • au moins un entraînement (62.1 à 62.3) susceptible d'être commandé et
    • au moins au système d'amenage, comportant au moins un actionneur (63.1 à 63.5) susceptible d'être commandé, pour l'adaptation d'au moins un dispositif d'usinage (11, 13, 23, 24, 26, 27, 40, 43, 51, 52) au substrat (2, 2', 3, 3', 4, 4') qu'il doit usiner et/ou au produit (8) qui doit être fabriqué,
    • un système de commande (60, 60') de l'installation, des entraînements (62.1 à 62.3) susceptibles d'être commandés du dispositif d'usinage (11, 13, 23, 24, 26, 27, 40, 43, 51, 52) et des actionneurs (63.1 à 5) susceptibles d'être commandés du système d'amenage étant en connexion active avec le système de commande (60, 60') et
    • un lecteur (50, 50', 50") qui est en connexion active avec le système de commande (60, 60') de l'installation,
    caractérisée par un dispositif de transfert de données (81, 81'), lequel créé une possibilité d'accès à un algorithme (90), l'algorithme (90) étant apte à transformer un marquage (5) détecté par le lecteur (50, 50', 50") et contenant un code produit (102) d'au moins un substrat (2, 2', 3, 3', 4, 4') à usiner en des valeurs de paramètres (100.1 à 100.5) du produit (8) à fabriquer et/ou en des valeurs de consignes prescrites (111.1 à 111.k) pour les entraînements (62.1 à 62.3) susceptibles d'être commandés et pour les actionneurs (63.1 à 63.5) susceptibles d'être commandés de la machine (1, 1', 1"), en ce que l'algorithme (90) suit une prescription bijective de telle sorte que des jeux de paramètres de produits (101) identiques mènent obligatoirement vers le même code produit (102) et en ce qu'à partir de chaque code produit (102), le jeu de paramètres (101) associé puisse être déterminé par application inversée de la même prescription.
  18. Installation selon la revendication 17, caractérisée en ce que le dispositif de transfert de données (81, 81') est apte à envoyer et/ou à réceptionner des signaux électriques.
  19. Installation selon la revendication 17, caractérisée en ce que le dispositif de transfert de données (81, 81') est apte à envoyer et/ou à réceptionner des ondes électromagnétiques qui se situent dans le spectre visible et/ou non visible.
  20. Installation selon l'une quelconque des revendications 17 à 19, caractérisée par une connexion (85) directionnelle, invariable du dispositif de transfert de données (81, 81') vers un centre informatique (83) mettant à disposition la base de données (60, 60') et/ou l'algorithme (90).
  21. Installation selon l'une quelconque des revendications 17 à 19, caractérisée par une connexion (86) omnidirectionnelle variable du dispositif de transfert de données (81, 81') vers un serveur Internet (84) mettant à disposition la base de données (60, 60') et/ou l'algorithme (90).
EP17000030.1A 2016-01-27 2017-01-09 Procédé de fabrication et installation destinée à utiliser le procédé de fabrication Active EP3199370B1 (fr)

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PL17000030T PL3199370T3 (pl) 2016-01-27 2017-01-09 Sposób wytwarzania i urządzenie do zastosowania sposobu wytwarzania

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DE102018103625A1 (de) * 2018-02-19 2019-08-22 Bundesdruckerei Gmbh System zur herstellung und bearbeitung eines buchförmigen ausweis-, wert- oder sicherheitsdokuments und herstellverfahren

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US5777876A (en) * 1995-12-29 1998-07-07 Bull Hn Information Systems Inc. Database manufacturing process management system
US7206087B2 (en) * 2000-05-16 2007-04-17 Xerox Corporation Finishing module coordinator apparatus and method for assembler/finisher systems
US6740021B2 (en) * 2001-12-28 2004-05-25 Kimberly Clark Worldwide, Inc. Device and method for longitudinally folding a stack of webs
DE10344577A1 (de) 2003-05-08 2005-02-17 Maschinenbau Oppenweiler Binder Gmbh & Co. Kg Verfahren zur Weiterverarbeitung gedruckter Bogen
DE102007036985B4 (de) * 2007-08-06 2010-12-16 OCé PRINTING SYSTEMS GMBH Verfahren, System und Computerprogrammprodukt zum automatischen Aufbereiten von Dokumentenbearbeitungsdaten
DE102008033184B4 (de) * 2008-07-15 2018-02-15 Dgr-Graphic Gmbh Verfahren zur Herstellung von klebegebundenen Druckerzeugnissen und Klebebinder
US20110007345A1 (en) * 2009-07-09 2011-01-13 John Thomas Varga Mechanism for Synchronizing Documents for Multi-Print Processing
DE102013212333A1 (de) * 2013-06-26 2014-12-31 Bayerische Motoren Werke Aktiengesellschaft Verfahren und Vorrichtung zur Überwachung einer Teileentnahme, Teilebereitstellungssystem, Verwendung eines Vibrationsalarmgeräts

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PL3199370T3 (pl) 2019-06-28
US10303150B2 (en) 2019-05-28
ES2716751T3 (es) 2019-06-14
DE102016000821A1 (de) 2017-07-27
US20170212493A1 (en) 2017-07-27

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